[1] 刘松玉, 钱国超, 章定文. 粉喷桩复合地基理论与工程应用[M]. 北京: 中国建筑工业出版社, 2006. LIU S Y, QIAN G C, ZHANG D W. Theory and Engineering application of powder spray pile composite foundation[M]. Beijing: China Building and Construction Press, 2006 (in Chinese). [2] 曹智国, 章定文. 水泥土无侧限抗压强度表征参数研究[J]. 岩石力学与工程学报, 2015, 34(增刊1): 3446-3454. CAO Z G, ZHANG D W. Study on characterization parameters of unconfined compressive strength of cement-soil[J]. Chinese Journal of Rock Mechanics and Engineering, 2015, 34(supplement 1): 3446-3454 (in Chinese). [3] 周海成, 单宏伟, 冯良平, 等. 基于粉质黏土的流态水泥固化土配合比试验及应用研究[J]. 公路, 2022, 67(10): 374-378. ZHOU H C, SHAN H W, FENG L P, et al. Mix proportion test and application research of fluidized cement stabilized soil based on silty clay[J]. Highway, 2022, 67(10): 374-378 (in Chinese). [4] 周承刚, 高俊良. 水泥土强度的影响因素[J]. 煤田地质与勘探, 2001, 29(1): 45-48. ZHOU C G, GAO J L. Control factors of grouting soil[J]. Coal Geology & Exploration, 2001, 29(1): 45-48 (in Chinese). [5] 饶彩琴, 黄汉盛. 深圳软土水泥土抗压强度的影响因素研究[J]. 华中科技大学学报(城市科学版), 2009, 26(2): 99-102. RAO C Q, HUANG H S. Factors affecting the compression strength of Shenzhen cement-stabilized soft soil[J]. Journal of Huazhong University of Science and Technology (Urban Science Edition), 2009, 26(2): 99-102 (in Chinese). [6] 王 清, 陈慧娥, 蔡可易. 水泥土微观结构特征的定量评价[J]. 岩土力学, 2003, 24(增刊1): 12-16. WANG Q, CHEN H E, CAI K Y. Quantitative evaluation of microstructure characteristics of cement-soil[J]. Rock and Soil Mechanics, 2003, 24(supplement 1): 12-16 (in Chinese). [7] 芮凯军, 李俊才, 杨 宇, 等. 不同土质水泥土性质的室内试验[J]. 南京工业大学学报(自然科学版), 2019, 41(2): 173-178. RUI K J, LI J C, YANG Y, et al. Laboratory tests on properties of cement soil with different soils[J]. Journal of Nanjing Tech University (Natural Science Edition), 2019, 41(2): 173-178 (in Chinese). [8] 李丽华, 万 畅, 梅利芳, 等. 玻璃纤维水泥土无侧限抗压强度特性研究[J]. 武汉大学学报(工学版), 2018, 51(3): 252-256. LI L H, WAN C, MEI L F, et al. Unconfined compression strength characteristics of glass fiber-reinforced cemented clay[J]. Engineering Journal of Wuhan University, 2018, 51(3): 252-256 (in Chinese). [9] 薛慧君, 申向东, 邹春霞, 等. 水泥土早期力学性能影响因素分析[J]. 硅酸盐通报, 2014, 33(8): 2056-2062. XUE H J, SHEN X D, ZOU C X, et al. Analysis of the factors affecting the early mechanical properties of cement soil[J]. Bulletin of the Chinese Ceramic Society, 2014, 33(8): 2056-2062 (in Chinese). [10] CONSOLI N C, CRUZ R C, FLOSS M F, et al. Parameters controlling tensile and compressive strength of artificially cemented sand[J]. Journal of Geotechnical and Geoenvironmental Engineering, 2010, 136(5): 759-763. [11] WANG S N, GUO S F, GAO X Q, et al. Effects of cement content and soil texture on strength, hydraulic, and microstructural characteristics of cement-stabilized composite soils[J]. Bulletin of Engineering Geology and the Environment, 2022, 81(7): 1-16. [12] 杨斌财, 刘维正, 余 勇, 等. 初始含水率和有机质对水泥土强度影响规律试验研究[J]. 铁道科学与工程学报, 2023, 20(10): 3798-3808. YANG B C, LIU W Z, YU Y, et al. Experimental study on the influence of initial water content and organic matter on the strength of cement soil[J]. Journal of Railway Science and Engineering, 2023, 20(10): 3798-3808 (in Chinese). [13] 郑少辉, 赖汉江, 章荣军, 等. 不同水灰比水泥固化黏土的强度特性试验研究[J]. 地下空间与工程学报, 2014, 10(6): 1281-1284+1292. ZHENG S H, LAI H J, ZHANG R J, et al. Experimental research on strength characteristics of cement-stabilized clay with different water-cement ratio[J]. Chinese Journal of Underground Space and Engineering, 2014, 10(6): 1281-1284+1292 (in Chinese). [14] 中华人民共和国住房和城乡建设部. 土工试验方法标准: GB/T 50123—2019[S]. 北京: 中国计划出版社, 2019. Ministry of Housing and Urban-Rural Development, People's Republic of China. Geotechnical test method standard: GB/T 50123—2019[S]. Beijing: China Planning Press, 2019 (in Chinese). [15] 国家质量监督检验检疫总局, 中国国家标准化管理委员会. 通用硅酸盐水泥: GB 175—2007[S]. 北京: 中国标准出版社, 2008. State Administration of Quality Supervision, Inspection and Quarantine, Standardization Administration of China. General purpose Portland cement: GB 175—2007[S]. Beijing: Standards Press of China, 2008 (in Chinese). [16] 中华人民共和国建设部. 混凝土用水标准: JGJ 63—2006[S]. 北京: 中国建筑工业出版社, 2006. Ministry of Construction of the People's Republic of China. Water standard for concrete: JGJ 63—2006[S]. Beijing: China Building and Construction Press, 2006 (in Chinese). [17] 中华人民共和国住房和城乡建设部. 水泥土配合比设计规程: JGJ/T 233—2011[S]. 北京: 中国建筑工业出版社, 2011. Ministry of Housing and Urban-Rural Development, People's Republic of China. Design rules for cement-soil mix ratio: JGJ/T 233—2011[S]. Beijing: China Architecture and Construction Press, 2011 (in Chinese). [18] 刘 新, 冯 攀, 沈叙言, 等. 水泥水化产物: 水化硅酸钙(C-S-H)的研究进展[J]. 材料导报, 2021, 35(9): 9157-9167. LIU X, FENG P, SHEN X Y, et al. Advances in the understanding of cement hydrate: calcium silicate hydrate(C-S-H)[J]. Materials Reports, 2021, 35(9): 9157-9167 (in Chinese). [19] WOO S, CHOI Y C. Synthesis of calcium silicate hydrate nanoparticles and their effect on cement hydration and compressive strength[J]. Construction and Building Materials, 2023, 407: 133559. [20] 杨 滨. 水泥土强度规律研究[D]. 上海: 上海交通大学, 2007. YANG B. Study on strength law of cement-soil[D]. Shanghai: Shanghai Jiao Tong University, 2007 (in Chinese). [21] 曾庆军, 莫海鸿, 潘泓等. 含砂量对水泥土强度影响的试验研究[J]. 岩土力学, 2006, 27(增刊2): 585-590. ZENG Q J, MO H H, PAN H, et al. Experimental study on the effect of sand content on the strength of soil-cement[J]. Rock and Soil Mechanics, 2006, 27(supplement 2): 585-590 (in Chinese). [22] 中华人民共和国建设部. 土的工程分类标准: GB/T 50145—2007[S]. 北京: 中国计划出版社, 2008. Ministry of Construction of the People's Republic of China. Engineering classification standard of soil: GB/T 50145—2007[S]. Beijing: China Planning Press, 2008 (in Chinese). |